Incremental Forming for Aluminum Automotive Technology

Author:

Golovashchenko Sergey F.1,Krause Al1,Gillard Alan J.1

Affiliation:

1. Ford Motor Company

Abstract

Insufficient formability can be a major issue in the manufacturing of complex parts, particularly in aluminum alloys that have less formability when compared to steel. The approach which is the subject of this work is to determine the technical feasibility of partial forming, followed by a fast heat treatment and then further deformation. Alloys for consideration would include both 5xxx and 6xxx alloys typically used on interior and exterior automotive panels. The heat treatment regimes used for 6xxx alloys did not affect the material structure, which was confirmed by microstructural analysis and comparison of mechanical properties before and after the heat treatment. Experiments on 5xxx alloys indicated relative improvement of 300% or more. Regimes of material deformation and heat treatment will be presented.

Publisher

ASMEDC

Reference14 articles.

1. Golovaschenko S. F. , and KrauseA. R., “Incremental Forming of Aluminum Blanks,” Aluminium Process & Product Technology, vol. 1, iss. 2, United Kingdom, 2004, pp. 87–88.

2. Benedyk, J. C., “Process for Formation of High Strength Ladder Structures,” U.S. Patent 4,766,664, Aug. 30, 1998.

3. Krajewski, P. E., and Ryntz, E. F., “Method for Improving the Hemmability of Age- Hardenable Aluminum Sheet,” U.S. Patent, Sept. 7, 1999.

4. Beckmann, M., and Vollertsen, F., “The Influence of a Local Heat Treatment on the Drawing Properties of an Aluminum Alloy,” SAE #2001-01-3376, Proc. SAE Automotive & Transportation Technology Congress & Exposition, Barcelona, Spain, 2001, vol. 4: Materials.

5. Golovaschenko, S. F., and Krause, A. R., “Incremental Forming of Aluminum Alloys,” in Automotive Alloys 2004, S. K. Das, ed., TMS Proc., Charlotte, NC, 2004.

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